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    • 2. 发明申请
    • Method of manufacturing through electrode-attached glass substrate and method of manufacturing electronic component
    • 通过电极附着的玻璃基板的制造方法和电子部件的制造方法
    • US20120005893A1
    • 2012-01-12
    • US13135495
    • 2011-07-07
    • Noboru Kawai
    • Noboru Kawai
    • H05K13/00
    • H01L21/4803H01L21/50H01L23/055H01L2924/0002H03H9/1021H03H2003/022H01L2924/00
    • A method of manufacturing a through electrode-attached glass substrate includes: forming an effective unit cell by drilling a plurality of through holes in a unit cell with a minimum area acquired by cutting out and dividing plate-shaped glass being configured as the unit cell and distributing dummy unit cells in which the through hole is not formed in an area in which the effective unit cell is formed; inserting electrode members into the through holes; welding the plate-shaped glass and the electrode members by heating the plate-shaped glass at a temperature that is higher than a softening point thereof; and grinding both sides of the plate-shaped glass together with the electrode members so as to expose a plurality of the electrode members to both sides of the plate-shaped glass and configure the plurality of the electrode members as a plurality of through electrodes that are electrically separated from each other.
    • 制造贯通电极玻璃基板的方法包括:通过在单元电池中钻多个通孔来形成有效的单元电池,通过切割和分割配置为单元电池的板状玻璃而获得的最小面积,以及 在形成有效单电池的区域中分布未形成通孔的虚拟单元电池; 将电极构件插入通孔中; 通过在高于其软化点的温度下加热板状玻璃来焊接板状玻璃和电极构件; 并且与电极部件一起研磨板状玻璃的两侧,以将多个电极部件暴露在板状玻璃的两侧,并将多个电极部件构成为多个贯通电极, 彼此电分离。
    • 3. 发明授权
    • Wrist portable information apparatus and speech method
    • 手腕便携式信息装置和语音方式
    • US06762685B2
    • 2004-07-13
    • US10005033
    • 2001-12-04
    • Atsushi MutoNoboru Kawai
    • Atsushi MutoNoboru Kawai
    • G08B2300
    • G04G21/04H04B1/385
    • A wrist portable information apparatus has a case containing a circuit board having a wireless communication circuit for performing wireless communication and a voice processing circuit for performing voice processing. First and second straps are connected to the case to mount the case to a user's wrist. A speaker is disposed in one of the case and the first strap to output processed voice from the voice processing circuit, and a microphone is disposed in one of the case and the second strap to input voice to the voice processing circuit. A contact mechanism is provided with an electrically connected state which is changed in response to opening and closing of at least one of the first strap and the second strap. A detecting circuit detects opening and closing of the first strap or the second strap by detecting the connected state of the contact mechanism.
    • 手持式便携式信息装置具有包含具有用于执行无线通信的无线通信电路的电路板和用于执行语音处理的语音处理电路的壳体。 第一和第二带连接到壳体以将壳体安装到用户的手腕上。 一个扬声器设置在一个壳体和第一个带子中,以从语音处理电路输出处理后的声音,并且一个麦克风设置在一个壳体和第二个带子中,以将语音输入到语音处理电路。 接触机构设置有电连接状态,其响应于第一带和第二带中的至少一个的打开和关闭而改变。 检测电路通过检测接触机构的连接状态来检测第一带或第二带的打开和关闭。
    • 4. 发明授权
    • Method of manufacturing through electrode-attached glass substrate and method of manufacturing electronic component
    • 通过电极附着的玻璃基板的制造方法和电子部件的制造方法
    • US08567052B2
    • 2013-10-29
    • US13135495
    • 2011-07-07
    • Noboru Kawai
    • Noboru Kawai
    • H01K3/10
    • H01L21/4803H01L21/50H01L23/055H01L2924/0002H03H9/1021H03H2003/022H01L2924/00
    • A method of manufacturing a through electrode-attached glass substrate includes: forming an effective unit cell by drilling a plurality of through holes in a unit cell with a minimum area acquired by cutting out and dividing plate-shaped glass being configured as the unit cell and distributing dummy unit cells in which the through hole is not formed in an area in which the effective unit cell is formed; inserting electrode members into the through holes; welding the plate-shaped glass and the electrode members by heating the plate-shaped glass at a temperature that is higher than a softening point thereof; and grinding both sides of the plate-shaped glass together with the electrode members so as to expose a plurality of the electrode members to both sides of the plate-shaped glass and configure the plurality of the electrode members as a plurality of through electrodes that are electrically separated from each other.
    • 制造贯通电极玻璃基板的方法包括:通过在单元电池中钻多个通孔来形成有效的单元电池,通过切割和分割配置为单元电池的板状玻璃而获得的最小面积,以及 在形成有效单电池的区域中分布未形成通孔的虚拟单元电池; 将电极构件插入通孔中; 通过在高于其软化点的温度下加热板状玻璃来焊接板状玻璃和电极构件; 并且与电极部件一起研磨板状玻璃的两侧,以将多个电极部件暴露在板状玻璃的两侧,并将多个电极部件构成为多个贯通电极, 彼此电分离。
    • 9. 发明授权
    • Method of manufacturing through electrode-attached glass substrate
    • 通过电极附着的玻璃基板制造方法
    • US08596092B2
    • 2013-12-03
    • US13135497
    • 2011-07-07
    • Noboru Kawai
    • Noboru Kawai
    • C03C27/02
    • H01L23/055H01L21/4803H01L21/50H01L2924/0002H03H3/02H03H9/0542H03H9/1021H01L2924/00
    • In a method of manufacturing a through electrode-attached glass substrate, electrode through holes and at least one dummy through hole are formed in a plate-shaped glass, and electrode members are inserted into the electrode through holes but not into the at least one dummy through-hole. The plate-shaped glass and the electrode members are welded by heating the plate-shaped glass at a temperature higher than a softening point of the plate-shaped glass so that the glass is allowed to flow into the at least one dummy through hole. Opposite surfaces of the plate-shaped glass are ground together with the electrode members so as to expose the electrode members to the opposite surfaces of the plate-shaped glass and to configure the electrode members as through electrodes that are electrically separated from each other.
    • 在制造贯通电极的玻璃基板的方法中,电极通孔和至少一个虚拟通孔形成在板状玻璃中,并且电极构件被插入到电极通孔中,但不插入至少一个虚拟 通孔。 通过在板状玻璃的软化点以上的温度下对板状玻璃进行加热来焊接板状玻璃和电极部件,使玻璃流入至少一个虚拟通孔。 将板状玻璃的相对表面与电极部件一起研磨,以将电极部件暴露于板状玻璃的相对表面,并将电极部件配置为彼此电隔离的贯通电极。
    • 10. 发明授权
    • Data storage apparatus and data storage method
    • 数据存储装置和数据存储方法
    • US08136015B2
    • 2012-03-13
    • US12300906
    • 2007-05-14
    • Noboru KawaiTadashi Arakawa
    • Noboru KawaiTadashi Arakawa
    • G06F11/00
    • G06F3/0631G06F3/0614G06F3/0679G06F11/1068
    • In the ordinary operation mode, a data storage apparatus writes data into a first flash memory, while writing ECC data, which is used for correcting the data written in the first flash memory, into a second flash memory. When there is no remaining storage space in the first flash memory, the data storage apparatus deletes existing ECC data previously written in the second flash memory and writes ordinary data into the second flash memory. This arrangement enhances the reliability of data and enables effective use of the original storage space in the system of data storage with multiple storage areas.
    • 在普通操作模式中,数据存储装置将用于将写入第一闪存中的数据校正的ECC数据写入第二闪速存储器中,将数据写入第一闪存。 当第一闪速存储器中没有剩余存储空间时,数据存储装置删除先前写入第二闪速存储器中的现有ECC数据,并将普通数据写入第二闪速存储器。 这种安排提高了数据的可靠性,并且能够有效利用具有多个存储区域的数据存储系统中的原始存储空间。